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Updated: Jul 15, 2026

Preparing a 68Ga-labeled Arginine Glycine Aspartate (RGD)-peptide for Angiogenesis
Published on: January 7, 2019
Selection of radiolabeled gastrin analogs for peptide receptor-targeted radionuclide therapy
Stephen J Mather1, Andrew J McKenzie, Jane K Sosabowski
1Department of Nuclear Medicine, St. Bartholomew's Hospital, London, United Kingdom. stephen.mather@cancer.org.uk
Unlabelled:
The gastrin/cholecystokinin-2 (CCK-2) receptor has been identified as a possible target for peptide receptor radionuclide imaging and therapy. Several radiolabeled peptides binding to this receptor have been explored in animal models and clinical trials but either low tumor uptake or high renal retention has been found. The aim of this study was to identify a peptide with improved tumor-to-kidney pharmacodynamics when compared with current candidates.
Methods:
A small peptide-chelator library of 34 compounds based on the C-terminal sequences of CCK-8 or minigastrin was constructed. The peptides were radiolabeled with (111)In with high labeling efficiency (>90%), as determined by high-performance liquid chromatographic analysis. The labeled peptides were screened by assessing tumor and kidney uptake in pancreatic xenograft nude mouse models, including AR42J. An extensive biodistribution analysis was performed on the lead candidate from the library.
Results:
Minigastrin analogs containing a pentaglutamate sequence showed the highest tumor uptake but very high renal retention. CCK analogs showed the lowest tumor and renal uptake. Deletion of the pentaglutamate sequence in the gastrin analogs lowered the tumor uptake by a factor of 3 but decreased the kidney uptake by a factor of 20. Insertion of histidine residues in the sequence reduced kidney uptake by a further factor of almost 2-fold. In AR42J tumor-bearing mice, the peptide with the sequence DOTA-HHEAYGWMDF-NH(2) (DOTA is tetraazacyclododecane tetraacetic acid) showed the highest tumor-to-kidney ratio of all peptides studied, with saturable uptake in target organs and low uptake by nontarget tissues other than the kidney.
Conclusion:
This peptide is a worthwhile candidate for clinical studies to determine whether it is suitable for use in peptide receptor-targeted radionuclide therapy.
Insights
Researchers developed a novel peptide targeting the gastrin/cholecystokinin-2 (CCK-2) receptor for improved cancer imaging and therapy. This new peptide shows enhanced tumor uptake and reduced kidney retention compared to existing candidates.
Area of Science:
- Biomedical research
- Radiopharmaceutical chemistry
- Oncology
Background:
- The gastrin/cholecystokinin-2 (CCK-2) receptor is a potential target for radionuclide-based cancer diagnostics and therapeutics.
- Existing radiolabeled peptides targeting the CCK-2 receptor exhibit suboptimal tumor uptake or excessive renal accumulation.
Purpose of the Study:
- To identify and characterize a novel peptide with superior tumor-to-kidney pharmacodynamics for CCK-2 receptor-targeted applications.
- To overcome the limitations of current peptide candidates in terms of tumor targeting and off-target organ retention.
Main Methods:
- A library of 34 peptide-chelator compounds based on CCK-8 and minigastrin analogs was synthesized.
- Peptides were radiolabeled with Indium-111 (111In) with high efficiency (>90%).
- In vivo screening in pancreatic xenograft mouse models (AR42J) assessed tumor and kidney uptake, followed by detailed biodistribution of the lead candidate.
Main Results:
- Minigastrin analogs with pentaglutamate sequences showed high tumor uptake but also significant renal retention.
- CCK analogs demonstrated low uptake in both tumors and kidneys.
- Modifications including pentaglutamate deletion and histidine insertion significantly improved the tumor-to-kidney ratio.
- The DOTA-HHEAYGWMDF-NH(2) peptide exhibited the highest tumor-to-kidney ratio, with saturable uptake in target organs and minimal off-target accumulation.
Conclusions:
- The DOTA-HHEAYGWMDF-NH(2) peptide demonstrates promising characteristics for CCK-2 receptor-targeted radionuclide therapy.
- This peptide warrants further clinical investigation for its therapeutic and diagnostic potential.
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